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Staphylococcus aureus Growth using Human Hemoglobin as an Iron Source
Published on: February 7, 2013
Temperature elevation regulates iron protoporphyrin IX and hemoglobin binding by Porphyromonas gingivalis
J W Smalley1, A J Birss, R Percival
1Unit of Oral Biology, Department of Clinical Dental Sciences, The Edwards Building, The University of Liverpool, Liverpool L69 3GN, UK. josmall@liverpool.ac.uk
Increased temperature affects Porphyromonas gingivalis, impacting its hemagglutinating activity and hemoglobin binding. This suggests a potential adaptation mechanism to manage toxic heme molecules and inflammation in periodontal pockets.
Area of Science:
- Microbiology
- Periodontology
- Bacterial Physiology
Background:
- Porphyromonas gingivalis, an anaerobic bacterium, requires iron protoporphyrin IX (FePPIX) for growth.
- Periodontal pockets experience elevated temperatures, potentially influencing bacterial behavior.
Purpose of the Study:
- To investigate the effects of increased growth temperatures on P. gingivalis's hemagglutinating activity, hemoglobin binding, and FePPIX binding.
- To understand P. gingivalis's adaptive strategies in response to thermal stress.
Main Methods:
- Culturing P. gingivalis in a chemostat at controlled temperatures (37°C, 39°C, 41°C).
- Assessing hemagglutinating (HA) activity.
- Measuring hemoglobin binding and degradation.
- Quantifying iron protoporphyrin IX (FePPIX) binding.
Main Results:
- Hemagglutinating activity decreased as growth temperature increased.
- Hemoglobin binding and degradation diminished with rising temperatures.
- Binding of dimeric haem (mu-oxo bishaem) and monomeric FePPIX forms increased at 39°C but decreased at 41°C.
Conclusions:
- Elevated temperatures reduce P. gingivalis's hemagglutination and hemoglobin degradation, potentially limiting toxic heme production.
- Increased FePPIX binding at 39°C may represent a defense against oxidants and a strategy to modulate inflammation for ecological balance.
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